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Unravelling angiosperm genome evolution by phylogenetic analysis of chromosomal duplication events

机译:通过染色体复制事件的系统发育分析揭示被子植物的基因组进化

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Conservation of gene order in vertebrates is evident after hundreds of millions of years of divergence(1,2), but comparisons of the Arabidopsis thaliana sequence(3) to partial gene orders of other angiosperms (flowering plants) sharing common ancestry, similar to170-235 million years ago(4) yield conflicting results(5-11). This difference may be largely due to the propensity of angiosperms to undergo chromosomal duplication ('polyploidization') and subsequent gene loss(12) ('diploidization'); these evolutionary mechanisms have profound consequences for comparative biology. Here we integrate a phylogenetic approach (relating chromosomal duplications to the tree of life) with a genomic approach (mitigating information lost to diploidization) to show that a genome-wide duplication(3,13-17) post-dates the divergence of Arabidopsis from most dicots. We also show that an inferred ancestral gene order for Arabidopsis reveals more synteny with other dicots (exemplified by cotton), and that additional, more ancient duplication events affect more distant taxonomic comparisons. By using partial sequence data for many diverse taxa to better relate the evolutionary history of completely sequenced genomes to the tree of life, we foster comparative approaches to the study of genome organization, consequences of polyploidy, and the molecular basis of quantitative traits. [References: 30]
机译:在经历了数亿年的分歧之后,脊椎动物的基因顺序得到了保护(1,2),但是将拟南芥序列(3)与具有共同祖先的其他被子植物(开花植物)的部分基因顺序进行比较,类似于170- 2.35亿年前(4)产生了矛盾的结果(5-11)。这种差异可能主要是由于被子植物倾向于进行染色体复制(“多倍化”)和随后的基因缺失(12)(“二倍化”);这些进化机制对比较生物学产生了深远的影响。在这里,我们将系统发育方法(将染色体重复与生命树相关联)与基因组方法(缓解因二倍体化而丢失的信息)进行了整合,以显示全基因组重复(3,13-17)可将拟南芥与大多数双子叶植物。我们还表明,推断的拟南芥祖先基因顺序揭示了与其他双子叶植物(以棉花为例)的同义性,另外,更古老的复制事件影响了更远的分类学比较。通过使用许多不同分类单元的部分序列数据,以更好地将完全测序的基因组的进化历史与生命树联系起来,我们促进了研究基因组组织,多倍性后果和定量性状的分子基础的比较方法。 [参考:30]

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